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新型卷曲蛋白特异性抗体类 Wnt 模拟物和 Wnt 超激动剂可在靶组织中选择性激活 WNT/β-连环蛋白信号通路。

Novel Frizzled-specific antibody-based Wnt mimetics and Wnt superagonists selectively activate WNT/β-catenin signaling in target tissues.

机构信息

Surrozen Inc., 171 Oyster Point Boulevard, Suite 400, South San Francisco, CA 94080, USA.

Surrozen Inc., 171 Oyster Point Boulevard, Suite 400, South San Francisco, CA 94080, USA.

出版信息

Cell Chem Biol. 2023 Aug 17;30(8):976-986.e5. doi: 10.1016/j.chembiol.2023.06.006. Epub 2023 Jul 5.

Abstract

WNTs are essential factors for stem cell biology, embryonic development, and for maintaining homeostasis and tissue repair in adults. Difficulties in purifying WNTs and their lack of receptor selectivity have hampered research and regenerative medicine development. While breakthroughs in WNT mimetic development have overcome some of these difficulties, the tools developed so far are incomplete and mimetics alone are often not sufficient. Here, we developed a complete set of WNT mimetic molecules that cover all WNT/β-catenin-activating Frizzleds (FZDs). We show that FZD stimulate salivary gland expansion in vivo and salivary gland organoid expansion. We further describe the discovery of a novel WNT-modulating platform that combines WNT and RSPO mimetics' effects into one molecule. This set of molecules supports better organoid expansion in various tissues. These WNT-activating platforms can be broadly applied to organoids, pluripotent stem cells, and in vivo research, and serve as bases for future therapeutic development.

摘要

WNTs 是干细胞生物学、胚胎发育以及维持成人内稳态和组织修复所必需的因素。WNTs 的纯化困难及其受体选择性缺乏阻碍了研究和再生医学的发展。虽然 WNT 模拟物的开发取得了一些突破,但迄今为止开发的工具并不完善,而且模拟物本身往往是不够的。在这里,我们开发了一整套 WNT 模拟分子,涵盖了所有 WNT/β-连环蛋白激活卷曲受体(FZDs)。我们表明 FZD 可刺激体内唾液腺扩张和唾液腺类器官扩张。我们进一步描述了一种新的 WNT 调节平台的发现,该平台将 WNT 和 RSPO 模拟物的作用结合到一个分子中。这组分子支持各种组织中类器官的更好扩张。这些 WNT 激活平台可广泛应用于类器官、多能干细胞和体内研究,并为未来的治疗开发提供基础。

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